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一项实地研究揭示了超积累景天植物相关细菌群落与 Cd/Zn 吸收和转运之间的联系。

A field study reveals links between hyperaccumulating Sedum plants-associated bacterial communities and Cd/Zn uptake and translocation.

机构信息

Key Laboratory of Environment Remediation and Ecological Health of Ministry of Education, College of Environmental and Resource Sciences, Zhejiang University, Hangzhou, China; Department of Agroecology, Aarhus University, Forsøgsvej 1, Slagelse, Denmark; College of Resources, Sichuan Agricultural University, Chengdu 611130, China.

Department of Agroecology, Aarhus University, Forsøgsvej 1, Slagelse, Denmark.

出版信息

Sci Total Environ. 2022 Jan 20;805:150400. doi: 10.1016/j.scitotenv.2021.150400. Epub 2021 Sep 17.

Abstract

Hyperaccumulating ecotypes of Sedum plants are promising Cd/Zn phytoextractors, with potential for leveraging its rhizospheric or endophytic microbiomes to improve phytoremediation efficiency. However, research of bacteria associated with Sedum at field scale is still lacking. Here, we presented a detailed investigation of the bacterial microbiome of hyperaccumulating Sedum ecotypes (S. alfredii and S. plumbizincicola) and a non-hyperaccumulating S. alfredii ecotype, which grow at different soil environments. Moreover, we evaluated the heavy metal uptake and translocation potential of Sedum plants at different locations. The results showed that both HE ecotypes, contrary to the NHE, were efficient for phytoremediation in mine areas and farmlands. For NHE plants, rhizosphere co-occurrence networks were more complex than the networks of other compartments, while networks of HE plants were more complex in bulk soil and roots. The proportion of positive correlations within co-occurrence networks was higher for the HE plants, suggesting a greater potential for mutualistic interactions. Plant compartment and location predominantly shaped the microbiome assembly, and Proteobacteria, Actinobacteria and Acidobacteria dominated the bacterial communities of Sedum plants. Keystone taxa related to Zn hyperaccumulation are similar to those related to Cd hyperaccumulation, and nine bacterial genera had significantly positive correlation with Cd/Zn hyperaccumulation. Taxa, linked to phytoremediation in both mine and farmland (i.e. Actinospica and Streptomyces from Actinobacteria), could be targets for further investigation of their ability to promote metal phytoremediation of Sedum species.

摘要

超积累型景天植物是有前景的 Cd/Zn 植物提取剂,可利用其根际或内生微生物群落来提高植物修复效率。然而,在野外尺度上对与景天相关的细菌的研究仍然缺乏。在这里,我们详细研究了超积累型景天植物(S. alfredii 和 S. plumbizincicola)和非超积累型 S. alfredii 植物的细菌微生物组,它们生长在不同的土壤环境中。此外,我们评估了景天植物在不同地点对重金属的吸收和转运潜力。结果表明,与非超积累型植物相比,两种超积累型植物在矿区和农田都具有高效的植物修复能力。对于非超积累型植物,根际共发生网络比其他部位的网络更为复杂,而超积累型植物的网络在根和土壤中更为复杂。共发生网络中正相关的比例在超积累型植物中更高,这表明它们具有更大的互利相互作用潜力。植物部位和地点主要影响微生物组的组装,变形菌门、放线菌门和酸杆菌门是景天植物细菌群落的主要优势菌门。与 Zn 超积累相关的关键类群与 Cd 超积累相关的类群相似,有 9 个细菌属与 Cd/Zn 超积累呈显著正相关。与矿区和农田的植物修复都有关的分类群(即放线菌门中的 Actinospica 和 Streptomyces),可以作为进一步研究它们促进景天属植物金属植物修复能力的目标。

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